Warm gloves
By incorporating metal vibration transmission pillars and impact bead structures into the warm gloves, the problem of difficulty in detecting incoming calls or messages on mobile phones in cold weather is solved, improving vibration sensing performance and reducing power consumption.
Patent Information
- Application Number
- CN202520126967.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-20
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2035-01-20
AI Technical Summary
Existing warm gloves with phone cases are not very effective at detecting incoming calls or messages in cold weather, especially for users who use vibration mode. In particular, the sensitivity to vibration is reduced when the user is in vibration mode, and the current technology does not provide a good experience for vibration transmission.
A vibration transmission column is set in the palm of the glove. The vibration transmission column is a metal column covered with a thermal layer. It extends into the glove body and forms a contact end at the mobile phone case. The vibration transmission column is equipped with a bead to enhance vibration sensing and a heating layer to reduce power consumption.
The design of the vibration transmission column and impact ball improves the user's ability to perceive incoming calls and messages, while reducing the coldness of the metal column and the phone's power consumption.
Smart Images

Figure CN223759271U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a warm glove, belonging to the field of gloves. Background Technology
[0002] Modern people use mobile phones very frequently in their daily lives. In cold weather, especially in the north, people are used to wearing gloves. It is very inconvenient to take out a mobile phone from a pocket or bag while wearing gloves, but it is also troublesome to take out a mobile phone after taking off gloves.
[0003] To address this, thermal gloves with built-in phone cases have emerged. When using them, the phone is placed inside the case, avoiding the inconvenience of handling the phone while wearing gloves and the hassle of removing them. For example, Chinese patent application number 201620673110.9 discloses a glove with a built-in phone case, comprising a glove body and a phone case, with the back of the phone case detachably attached to the palm of the glove body. These thermal gloves with phone cases often also include a cover to insulate the phone case from the outside environment, preventing both the phone and the case from being directly exposed to cold weather.
[0004] These thermal gloves with phone cases have the problem of making it difficult to detect incoming calls or messages. Whether the call or message is a ringtone or a vibration, when it is a ringtone, the phone case or thermal cover can negatively affect the transmission of the ringtone to the outside, reducing the user's awareness of the call or message. This is especially true when the user is wearing a thermal hat. When the call or message is a vibration, the thickness of the thermal gloves can significantly weaken the vibration, making it difficult for the hand to feel. Utility Model Content
[0005] To address the shortcomings of existing technologies, this application provides a thermal glove that solves the problem of difficulty in sensing incoming calls or messages from mobile phones while wearing thermal gloves.
[0006] A thermal glove includes a glove body with a palm portion, a mobile phone case detachably attached to the palm portion, a thermal cover for covering the mobile phone case on the palm portion, and a plurality of vibration transmission posts provided on the palm portion corresponding to the portion of the mobile phone case, the vibration transmission posts extending into the glove body to transmit vibrations from the mobile phone to the glove body.
[0007] Preferably, the vibration transmission column is a metal column, and the portion of the metal column extending into the glove body is covered with a thermal insulation layer.
[0008] Preferably, one end of the vibration transmission column outside the glove body extends into the phone case to form a phone contact end.
[0009] Preferably, the end face of the vibration transmission column extending into the glove body is provided with a plurality of receiving grooves, and the receiving grooves are provided with a plurality of impact beads for impacting the insulating layer.
[0010] Preferably, the heat-insulating cover includes an inner layer, an outer layer, and an intermediate layer disposed between the inner and outer layers and consisting of a heating layer or consisting of a heating element after being inserted.
[0011] Preferably, the heating layer is composed of a heating pad with heating wires.
[0012] Preferably, the intermediate layer is a flexible capsule for accommodating a one-sided opening of the self-heating patch.
[0013] In summary, this utility model has the following beneficial effects:
[0014] 1. This utility model provides a plurality of vibration transmission columns that extend into the glove body at the part of the palm corresponding to the mobile phone cover. The vibration generated when the mobile phone receives a call or message is transmitted to the inside of the glove body, allowing the user to perceive the vibration through the hand and thus be more sensitive to the incoming call or message, solving the problem of not being able to perceive the incoming call or message when wearing warm gloves.
[0015] 2. In this utility model, the vibration transmission column is made of metal, which has a better vibration transmission effect. The part of the vibration transmission column located in the glove body is covered with a warm layer to reduce the cold feeling of the metal column to the hand. The end of the vibration transmission column outside the glove body extends into the phone case to form a phone contact end, directly receiving the vibration of the phone, reducing vibration loss and improving the hand's perception of the phone's vibration.
[0016] 3. In this utility model, the end face of the vibration transmission column extending into the glove body is provided with several receiving grooves, and several impact beads are provided in the receiving grooves. During the process of transmitting vibration, the impact beads vibrate or jump to a certain extent in the receiving grooves. The impact beads appropriately strike the insulating layer, making the hand feel more intense.
[0017] 4. In this utility model, the warming cover includes an intermediate layer consisting of a heating layer or a heating element, which further reduces the power consumption of the mobile phone in cold weather. Attached Figure Description
[0018] Figure 1 A simplified structural diagram of a thermal glove;
[0019] Figure 2 This is a schematic diagram of the installation of the vibration transmission column;
[0020] Figure 3 This is a schematic diagram of the installation of the second type of vibration transmission column;
[0021] Figure 4A simplified structural diagram of the heat-insulating cover. Detailed Implementation
[0022] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.
[0023] Example:
[0024] A type of thermal glove, as shown in Figures 1-2, includes a glove body 1 with a palm portion 11. A mobile phone case 2 is detachably connected to the palm portion 11. The mobile phone case 2 is specifically connected to the palm portion 11 via Velcro or snap fasteners. The mobile phone case 2 is used to store a mobile phone, avoiding the inconvenience of handling the phone while wearing gloves and the hassle of removing gloves to handle the phone. The palm portion 11 also has a thermal cover 3 for covering the mobile phone case 2. The thermal cover 3 is connected to the palm portion 11 via Velcro 7. Of course, in other embodiments, the thermal cover 3 can also be connected to the palm portion 11 via a zipper. The palm portion 11 corresponds to the mobile phone. The back of the phone case 2 is provided with several vibration transmission columns 4. The back of the phone case 2 refers to the side that fits against the palm 11. The vibration transmission columns 4 extend into the glove body 1 by 1-4mm. The vibration transmission columns 4 are arranged in a rectangular array. The warm cover 3 can prevent the phone case 2 and the phone stored in the phone case 2 from being directly exposed to cold weather, reducing the power consumption of the phone in cold weather. When the phone receives a call or a message, the vibration transmission columns 4 transmit the vibration generated by the phone to the inside of the glove body 1, allowing the user to feel the vibration through their hand, thereby enabling them to keenly detect the incoming call.
[0025] The vibration transmission column 4 is made of a metal column, such as an iron column or a copper column, which has a good vibration transmission effect. The part of the metal column that extends into the glove body is covered with a thermal insulation layer 5 to reduce the cold feeling of the metal column to the hand. The end of the vibration transmission column 4 outside the glove body 1 extends into the phone case 2 to form a phone contact end, directly receiving the vibration of the phone, reducing vibration loss and improving the hand's perception of the phone's vibration. The extension of the vibration transmission column 4 into the phone case 2 is 0-2mm.
[0026] like Figure 3 As shown, the end face of the vibration transmission column 4 extending into the glove body 1 is provided with several receiving grooves 41, and several impact beads 42 are provided in the receiving grooves. The impact beads 42 can be elastic beads made of rubber. The impact beads 42 are preferably arranged in a straight line in the vibration transmission direction of the vibration transmission column 4. During the process of transmitting vibration to the glove body 1, the vibration transmission column 4 can also transmit vibration to the impact beads 42, so that the impact beads 42 vibrate to a certain extent in the receiving grooves 41, so that the impact beads 42 collide with each other. Thus, the impact beads 42 close to the insulation layer 5 appropriately collide with the insulation layer 5, making the hand feel more intense.
[0027] Because the vibration signal from the phone during a call or message helps users be more aware of incoming calls, the degree to which the warming cover 3 obstructs the ringtone is no longer a major concern. At this point, as... Figure 4 As shown, the warming cover 3 includes an inner layer 31, an outer layer 32, and an intermediate layer 33 disposed between the inner layer 31 and the outer layer 32. The inner layer 31 is made of a soft fleece layer, and the intermediate layer 33 is a flexible capsule with an opening on one side for accommodating a self-heating patch. After the self-heating patch is placed in the flexible capsule, a heating layer is formed, which further reduces the power consumption of the mobile phone in cold weather. In other embodiments, the intermediate layer 3 may also have other structures, such as the intermediate layer being directly composed of a heating pad made of heating wires. This heating layer can be powered by a mobile power supply, and the power consumption of the mobile phone in cold weather is further reduced by the heat-generating intermediate layer 3.
[0028] The above embodiments are merely descriptions of preferred embodiments of the present invention and are not intended to limit the concept and scope of the present invention. Various modifications and improvements made to the technical solutions of the present invention by those skilled in the art without departing from the design concept of the present invention should fall within the protection scope of the present invention. The technical content for which protection is sought in the present invention has been fully described in the claims.
Claims
1. A warm-keeping glove, comprising a glove body (1) having a palm part (11), a cell phone cover (2) being detachably connected to the palm part (11), and a warm-keeping cover (3) being arranged on the palm part (11) for covering the cell phone cover (2), characterized in that, The palm part (11) is provided with a plurality of vibration transmission columns (4) corresponding to the part of the back of the mobile phone cover (2), the vibration transmission columns (4) extend into the glove body (1) to transmit the vibration from the mobile phone to the glove body (1).
2. A thermal glove according to claim 1, wherein The vibration transmission column (4) is a metal column, and the part of the metal column extending into the glove body (1) is covered with a warm layer (5).
3. A thermal glove according to claim 1, wherein The end of the vibration transmission column (4) extending out of the glove body (1) extends into the mobile phone cover (2) to form a mobile phone contact end.
4. A thermal glove according to claim 2, wherein, The end surface of the vibration transmission column (4) extending into the glove body (1) is provided with a plurality of accommodating grooves (41), and the accommodating grooves (41) are provided with a plurality of impact beads (42) for impacting the warm layer (5).
5. A thermal glove according to claim 4, wherein, The impact beads (42) are elastic beads.
6. A thermal glove according to claim 1, wherein The warm cover (3) comprises an inner layer (31), an outer layer (32), and an intermediate layer (33) disposed between the inner layer (31) and the outer layer (32) and composed of a heating layer or composed of a heating layer after a heating element is put in.
7. A thermal glove according to claim 6, wherein, The heating layer is composed of a heating pad with a heating wire.
8. A thermal glove according to claim 6, wherein, The intermediate layer (33) is a flexible bag body with an open side for accommodating a self-heating patch.
Citation Information
Patent Citations
Take gloves of cell -phone cover
CN205884752U